> A method for the preparation of stripe‐like monolayers of microspheroids is described. The particles were obtained from polystyrene core/polygl'/> Colloidal liquid crystal type assemblies of spheroidal polystyrene core/polyglycidol‐rich shell particles (P[S/PGL]) formed at the liquid‐silicon‐air interface by a directed dewetting process
首页> 外文期刊>Polymers for advanced technologies >Colloidal liquid crystal type assemblies of spheroidal polystyrene core/polyglycidol‐rich shell particles (P[S/PGL]) formed at the liquid‐silicon‐air interface by a directed dewetting process
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Colloidal liquid crystal type assemblies of spheroidal polystyrene core/polyglycidol‐rich shell particles (P[S/PGL]) formed at the liquid‐silicon‐air interface by a directed dewetting process

机译:胶体液晶型组件的球形聚苯乙烯芯/富吡啶酚富含壳颗粒(P [S / PL])通过定向的脱模过程形成在液体 - 硅空气界面处

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> A method for the preparation of stripe‐like monolayers of microspheroids is described. The particles were obtained from polystyrene core/polyglycidol‐rich shell microspheres by stretching poly (vinyl alcohol) films that contain embedded particles. The stretching was performed under controlled conditions at temperatures above the T g of the films and particles. The elongated films were dissolved in water, and the microspheroids were subsequently removed and purified from the poly (vinyl alcohol). The aspect ratio (AR) of the particles, which denotes the ratio of the lengths of the longer to shorter particle axes, was determined by the film elongation. The AR values were in the range of 2.9‐7.7. Spheroidal particles with various ARs were deposited onto silicon wafers from an ethanol (EtOH) suspension. The particle concentration and volume of the suspension were the same in each experiment. Evaporation of the EtOH yielded stripes of spherical particles packed into nematic‐type colloidal crystals and assembled into monolayers. The orientation of the stripes after ethanol evaporation was perpendicular to the triphasic (silicon‐ethanol‐air) interface along the silicon substrate. The adsorbed stripes on the wafers were characterized in terms of their interstripe distance (ID), stripe width, and crystal domain size. Nematic‐type spheroid arrangements in the stripes were the dominant structure, which enabled denser packing of the particles into colloidal crystals than that allowed by the smectic‐type arrangements. Furthermore, the number of spheroids adsorbed per surface unit of the silicon wafers was similar for all ARs, but the width and frequency of the spheroid stripes adsorbed on the wafers were different.
机译: > 描述了一种制备条纹状单层的微球体的方法。通过拉伸含有嵌入颗粒的聚(乙烯醇)薄膜从聚苯乙烯核/聚冠状糖壳微球中获得颗粒。在温度下的温度下进行拉伸在T上方的温度下进行 g 薄膜和颗粒。将细长的膜溶于水中,随后除去微球体并从聚(乙烯醇)纯化。通过薄膜伸长率确定颗粒的纵横比(Ar)表示较短粒子轴的长度的比率。 AR值在2.9-7.7的范围内。将具有各种Ar的球状颗粒从乙醇(EtOH)悬浮液中沉积在硅晶片上。在每个实验中,悬浮液的颗粒浓度和体积相同。 EtOH的蒸发产生的球形颗粒填充到向列型胶体晶体中并组装成单层。乙醇蒸发后条纹的取向垂直于硅衬底垂直于三碳酸(硅 - 乙醇 - 空气)界面。晶片上的吸附条纹的特征在于它们的距离(ID),条纹宽度和晶体畴大小。条纹中的向型球形布置是主导结构,使颗粒的密集包装成胶体晶体,而不是通过椎体型布置允许的粒子。此外,对所有AR的硅晶片的每个表面单元吸附的球状体的数量相似,但是晶片上吸附在晶片上的球状条纹的宽度和频率是不同的。

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